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Subsurface modifications in powder metallurgy aluminium alloy composites reinforced with intermetallic MoSi2 particles under dry sliding wear

机译:金属间化合物MoSi2颗粒增强的粉末冶金铝合金复合材料在干滑动磨损下的亚表面改性

摘要

The effect of dry sliding wear on the subsurface of six AA6061/MoSi2/15p composites processed by powder metallurgy with varying mixing methods (wet blending, rotating cube and ball milling) and reinforcement sizes was investigated. Three regions could be distinguished: the tribolayer or mechanically mixed layer (MML), the elasto-plastically deformed layer, where deflection of material occurs, and the unaffected bulk. The MML was not uniform along the surface and no relation could be found between the size/shape of MML areas and processing variables or applied loads. In the second region, particles close to the MML were found to be fragmented only in the composites processed using low energy. These composites were the only ones to show hardening, together with the similarly processed unreinforced alloy. It can be concluded that, although the subsurface of these composites are noticeably affected by dry wearing through formation of a mechanically mixed layer and material deflection, the ball milled composites do not suffer subsurface hardening and their reinforcing particles do not break during the test. It is also evident from the present research that no simple correlation exists between the size/shape of the tribolayer and deflection parameters and processing variables or applied loads.
机译:研究了干式滑动磨损对六种AA6061 / MoSi2 / 15p复合材料粉末表面的影响,这些复合材料通过不同的混合方法(湿混,旋转立方和球磨)和增强尺寸经粉末冶金加工而成。可以区分三个区域:摩擦层或机械混合层(MML),发生材料挠曲的弹塑性变形层和未受影响的体积。 MML沿表面不均匀,并且在MML区域的大小/形状与加工变量或施加的载荷之间未发现任何关系。在第二区域中,仅在使用低能量处理的复合材料中,接近MML的颗粒才被破碎。这些复合材料是唯一表现出硬化作用的材料,同时也是经过类似处理的未增强合金。可以得出结论,尽管这些复合材料的表面受机械混合层的形成和材料变形的影响而明显受到干磨的影响,但球磨复合材料并未遭受表面硬化,其增强颗粒在测试过程中也不会破裂。从本研究中还可以明显看出,摩擦层的尺寸/形状与挠度参数,加工变量或施加的载荷之间不存在简单的相关性。

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